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首页> 外文期刊>Journal of Biomechanics >Increased initial cement-bone interlock correlates with reduced total knee arthroplasty micro-motion following in vivo service
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Increased initial cement-bone interlock correlates with reduced total knee arthroplasty micro-motion following in vivo service

机译:体内服务后,初始骨水泥互锁的增加与总膝关节置换微运动的减少相关

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摘要

Aseptic loosening of cemented tibial components in total knee arthroplasty (TKA) has been related to inadequate cement penetration into the trabecular bone bed during implantation. Recent postmortem retrieval work has also shown there is loss of interlock between cement and bone by resorption of trabeculae at the interface. The goal of this study was to determine if TKAs with more initial interlock between cement and bone would maintain more interlock with in vivo service (in the face of resorbing trabeculae) and have less micro-motion at the cement-bone interface. The initial (created at surgery) and current (after in vivo service) cement-bone interlock morphologies of sagittal implant sections from postmortem retrieved tibial tray constructs were measured. The implant sections were then functionally loaded in compression and the micro-motion across the cement-bone interface was quantified. Implant sections with less initial interdigitation between cement and bone and more time in service had less current cement-bone interdigitation (r2=0.86, p=0.0002). Implant sections with greater initial interdigitation also had less micro-motion after in vivo service (r2=0.36, p=0.0062). This work provides direct evidence that greater initial interlock between cement and bone in tibial components of TKA results in more stable constructs with less micro-motion with in vivo service.
机译:全膝关节置换术(TKA)中胫骨水泥成分的无菌性松动与植入过程中水泥对小梁骨床的渗透不足有关。最近的尸体取回工作还显示,由于小梁在界面处的吸收,导致水泥与骨之间的互锁损失。这项研究的目的是确定在水泥与骨之间具有更多初始互锁的TKA是否将与体内服务保持更多的互锁(面对骨小梁的再吸收),并且在骨水泥界面处的微动是否较少。测量了死后取回的胫骨托结构的矢状植入物部分的初始(在手术中创建)和当前(在体内使用后)水泥骨互锁形态。然后以压缩的方式对植入物部分进行功能加载,并量化跨水泥骨界面的微运动。初期在水泥与骨之间的交叉指头较少且使用时间较长的植入物切片,目前的水泥骨交叉指形较少(r2 = 0.86,p = 0.0002)。初始指间较大的植入物在体内使用后的微动也较少(r2 = 0.36,p = 0.0062)。这项工作提供了直接的证据,表明在TKA胫骨组件中,水泥与骨之间的更大的初始互锁会导致更稳定的构建体,并且在体内使用时微动较少。

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